XAS of tetrakis(phenyl)- and tetrakis(pentafluorophenyl)-porphyrin: an experimental and theoretical study. 2015

Marco Vittorio Nardi, and Roberto Verucchi, and Luca Pasquali, and Angelo Giglia, and Giovanna Fronzoni, and Mauro Sambi, and Giulia Mangione, and Maurizio Casarin
Institute for Physics, Supramolecular Systems Division "SMS", Humboldt Universitat zu Berlin, Brook-Taylor-Straße 6, 12489 Berlin, Germany. marco.nardi@physik.hu-berlin.de.

The unoccupied electronic structure of tetrakis(phenyl)- and tetrakis(pentafluorophenyl)-porphyrin thick films deposited on SiO2/Si(100) native oxide surfaces has been thoroughly studied by combining the outcomes of near-edge X-ray absorption fine structure spectroscopy at the C, N, and F K-edges with those of scalar relativistic zeroth order regular approximation time-dependent density functional theory calculations carried out on isolated molecules. Both experimental and theoretical results concur to stress the electronic inertness of pristine porphyrin macrocycle based 1s(C)→π* and 1s(N)→π* transitions whose excitation energies are substantially unaffected upon fluorination. The obtained results complement those published by the same group about the occupied states of both molecules, thus providing the missing tile to get a thorough description of the halide decoration effects on the electronic structure of the tetrakis(phenyl)-porphyrin.

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